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We propose a series of azolium poly(azolyl)borate ionic liquids (ILs) for reversible SO2 capture. Density functional calculations demonstrate that the designed borate anions can strongly bond to SO2 at multiple sites with nearly uniform binding energies. Thus, as well as high overall uptakes, the ILs can achieve much higher effective uptakes (the uptake difference between absorption and desorption conditions) than existing SO2‐capture reagents. The larger size of the borate anions, the evenly distributed negative charge among the azolyl rings, and the blocking of the conjugation by the tetrahedral boron concertedly reduce absorbate–absorbate repulsion, which leads to a large disparity among binding sites in other multiple‐site SO2 sorbents. 相似文献
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《化学:亚洲杂志》2017,12(21):2863-2872
A new strategy involving the computer‐assisted design of substituted imidazolate‐based ionic liquids (ILs) through tuning the absorption enthalpy as well as the basicity of the ILs to improve SO2 capture, CO2 capture, and SO2/CO2 selectivity was explored. The best substituted imidazolate‐based ILs as absorbents for different applications were first predicted. During absorption, high SO2 capacities up to ≈5.3 and 2.4 mol molIL−1 could be achieved by ILs with the methylimidazolate anions under 1.0 and 0.1 bar (1 bar=0.1 MPa), respectively, through tuning multiple N ⋅⋅⋅ S interactions between SO2 and the N atoms in the imidazolate anion with different substituents. In addition, CO2 capture by the imidazolate‐based ILs could also be easily tuned through changing the substituents of the ILs, and 4‐bromoimidazolate IL showed a high CO2 capacity but a low absorption enthalpy. Furthermore, a high selectivity for SO2/CO2 could be reached by IL with 4,5‐dicyanoimidazolate anion owing to its high SO2 capacity but low CO2 capacity. The results put forward in this work are in good agreement with the predictions. Quantum‐chemical calculations and FTIR and NMR spectroscopy analysis methods were used to discuss the SO2 and CO2 absorption mechanisms. 相似文献
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Significant Improvements in CO2 Capture by Pyridine‐Containing Anion‐Functionalized Ionic Liquids through Multiple‐Site Cooperative Interactions 下载免费PDF全文
Xiaoyan Luo Yan Guo Fang Ding Hongqing Zhao Guokai Cui Haoran Li Prof. Congmin Wang 《Angewandte Chemie (International ed. in English)》2014,53(27):7053-7057
A strategy for improving CO2 capture by new anion‐functionalized ionic liquids (ILs) making use of multiple site cooperative interactions is reported. An extremely high capacity of up to 1.60 mol CO2 per mol IL and excellent reversibility were achieved by introducing a nitrogen‐based interacting site on the phenolate and imidazolate anion. Quantum‐chemical calculations, spectroscopic investigations, and calorimetric data demonstrated that multiple‐site cooperative interactions between two kinds of interacting sites in the anion and CO2 resulted in superior CO2 capacities, which originated from the π‐electron delocalization in the pyridine ring. 相似文献
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Dzmitry S. Firaha Dr. Oldamur Hollóczki Prof. Dr. Barbara Kirchner 《Angewandte Chemie (International ed. in English)》2015,54(27):7805-7809
Ionic liquids (ILs), vary strongly in their interaction with CO2. We suggest simple theoretical approach to predict the CO2 absorption behavior of ILs. Strong interaction of the CO2 with the IL anions corresponds to chemical absorption whereas weak interaction indicates physical absorption. A predictive estimate with a clear distinction between physical and chemical absorption can be simply obtained according to geometries optimized in the presence of a solvation model instead of optimizing it only in gas phase as has been done to date. The resulting Gibbs free energies compare very well with experimental values and the energies were correlated with experimental capacities. Promising anions, for ionic liquids with reversible CO2 absorption properties can be defined by a reaction Gibbs free energy of absorption in the range of ?30 to 16 kJ mol?1. 相似文献
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Yanqiang Zhang Dr. Suojiang Zhang Prof. Dr. Xingmei Lu Dr. Qing Zhou Dr. Wei Fan XiangPing Zhang Dr. 《Chemistry (Weinheim an der Bergstrasse, Germany)》2009,15(12):3003-3011
CO 2 is locked up : Dual amino‐functionalised phosphonium ionic liquids (ILs; see figure) have been prepared. The ILs have excellent thermal properties, such as low glass transition temperatures and high thermal decomposition temperatures. The supported CO2 absorption of four of the ILs on porous SiO2 was found to approach one mol CO2 per mol IL, a factor of two greater than that reported before.
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Invoking Pairwise Interactions in Water‐Promoted Diels–Alder Reactions by using Ionic Liquids as Cosolvents 下载免费PDF全文
Rate constants and derived activation parameters of organic reactions in aqueous media, in particular Diels–Alder reactions, are sensitive to the presence of cosolvents in water. To enhance the solubility window of water, we introduced ionic liquids as cosolvents in the aqueous Diels–Alder reaction between anthracene‐9‐carbinol and N‐ethylmaleimide. The reactive potentials of the organic compounds are parameterized by using semi‐empirical quantum chemical methods. The principle of Savage–Wood additivity of group interactions is used to quantify the pairwise group interactions among chemically inert ionic liquids and organic reactants, both at initial and transition states of the reaction. The present approach shows promise, as the use of simple calculations from easily available kinetic data can help researchers to understand the versatility of green ionic‐liquid alternatives to volatile organic solvents. 相似文献
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Highly Efficient Nitric Oxide Capture by Azole‐Based Ionic Liquids through Multiple‐Site Absorption 下载免费PDF全文
Dr. Kaihong Chen Dr. Guiling Shi Xiuyuan Zhou Prof. Dr. Haoran Li Prof. Dr. Congmin Wang 《Angewandte Chemie (International ed. in English)》2016,55(46):14364-14368
A novel method for highly efficient nitric oxide absorption by azole‐based ionic liquid was reported. The NO absorption capacity reached up to 4.52 mol per mol ionic liquid and is significant higher than the capacity other traditional absorbents. Moreover, the absorption of NO by this ionic liquid was reversible. Through a combination of experimental absorption, quantum chemical calculation, NMR and FT‐IR spectroscopic investigation, the results indicated that such high capacity originated from multiple‐site interactions between NO and the anion through the formation of NONOate with the chemical formula R1R2N?(NO?)?N=O, where R1 and R2 are alkyl groups. We believe that this highly efficient and reversible NO absorption by an azole‐based ionic liquid paves a new way for gas capture and utilization. 相似文献
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Prof. Dr. Duan-Jian Tao Feng-Feng Chen Dr. Zi-Qi Tian Dr. Kuan Huang Dr. Shannon M. Mahurin Prof. Dr. De-en Jiang Prof. Dr. Sheng Dai 《Angewandte Chemie (International ed. in English)》2017,56(24):6843-6847
A novel method for the highly efficient and reversible capture of CO in carbanion-functionalized ionic liquids (ILs) by a C-site interaction is reported. Because of its supernucleophilicity, the carbanion in ILs could absorb CO efficiently. As a result, a relatively high absorption capacity for CO (up to 0.046 mol mol−1) was achieved under ambient conditions, compared with CO solubility in a commonly used IL [Bmim][Tf2N] (2×10−3 mol mol−1). The results of quantum mechanical calculations and spectroscopic investigation confirmed that the chemical interaction between the C-site in the carbanion and CO resulted in the superior CO absorption capacities. Furthermore, the subsequent conversion of captured CO into valuable chemicals with good reactivity was also realized through the alkoxycarbonylation reaction under mild conditions. Highly efficient CO absorption by carbanion-functionalized ILs provides a new way of separating and converting CO. 相似文献
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An Abnormal N‐Heterocyclic Carbene–Carbon Dioxide Adduct from Imidazolium Acetate Ionic Liquids: The Importance of Basicity 下载免费PDF全文
Zsolt Kelemen Barbara Péter‐Szabó Dr. Edit Székely Dr. Oldamur Hollóczki Dzmitry S. Firaha Prof. Dr. Barbara Kirchner Dr. József Nagy Prof. Dr. László Nyulászi 《Chemistry (Weinheim an der Bergstrasse, Germany)》2014,20(40):13002-13008
In the reaction of 1‐ethyl‐3‐methylimidazolium acetate [C2C1Im][OAc] ionic liquid with carbon dioxide at 125 °C and 10 MPa, not only the known N‐heterocyclic carbene (NHC)–CO2 adduct I , but also isomeric aNHC‐CO2 adducts II and III were obtained. The abnormal NHC‐CO2 adducts are stabilized by the presence of the polarizing basic acetate anion, according to static DFT calculations and ab initio molecular dynamics studies. A further possible reaction pathway is facilitated by the high basicity of the system, deprotonating the initially formed NHC‐CO2 adduct I , which can then be converted in the presence of the excess of CO2 to the more stable 2‐deprotonated anionic abnormal NHC–CO2 adduct via the anionic imidazolium‐2,4‐dicarboxylate according to DFT calculations on model compounds. This suggests a generalizable pathway to abnormal NHC complex formation. 相似文献
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Haixiang Gao Dr. Young‐Hyuk Joo Dr. Brendan Twamley Dr. Zhiqiang Zhou Prof. Dr. Jean'ne M. Shreeve Prof. Dr. 《Angewandte Chemie (International ed. in English)》2009,48(15):2792-2795
No flame, no gain : A hypergolic mixture is composed of stable species that readily react/ignite on molecular contact. Both the anion and the cation in an ionic liquid play prominent roles in determining hypergolic properties as well as ignition delay times. With the 2,2‐dialkyltriazanium cation, salts with nitrate, chloride, nitrocyanamide, and dicyanamide anions are hypergolic.
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Dazhen Xiong Dr. Guokai Cui Prof. Jianji Wang Dr. Huiyong Wang Zhiyong Li Dr. Kaisheng Yao Prof. Suojiang Zhang 《Angewandte Chemie (International ed. in English)》2015,54(25):7265-7269
Ionic liquids (ILs) with a reversible hydrophobic–hydrophilic transition were developed, and they exhibited unique phase behavior with H2O: monophase in the presence of CO2, but biphase upon removal of CO2 at room temperature and atmospheric pressure. Thus, coupling of reaction, separation, and recovery steps in sustainable chemical processes could be realized by a reversible liquid–liquid phase transition of such IL‐H2O mixtures. Spectroscopic investigations and DFT calculations showed that the mechanism behind hydrophobic–hydrophilic transition involved reversible reaction of CO2 with anion of the ILs and formation of hydrophilic ammonium salts. These unique IL‐H2O systems were successfully utilized for facile one‐step synthesis of Au porous films by bubbling CO2 under ambient conditions. The Au porous films and the ILs were then separated simultaneously from aqueous solutions by bubbling N2, and recovered ILs could be directly reused in the next process. 相似文献
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CO2是导致温室效应的最主要成分,因此碳捕集技术的研究受到学术界和产业界的高度重视。离子液体具有不挥发、不燃烧、热稳定性好、溶解能力强、结构和性质可调节并可循环使用等特性,在CO2的吸收/分离领域展现了广阔的应用前景。本文系统地综述了近年来常规离子液体、功能化离子液体、支撑离子液体膜、聚合离子液体以及离子液体与分子溶剂的混合物在捕集CO2方面的研究进展;讨论了离子液体的阳离子结构、阴离子类型、烷基链长度、阴/阳离子的氟化程度和功能化、离子液体的负载作用和聚合效应以及体系的温度和压力对CO2选择性捕集性能的影响;分析了可能的捕集机理以及各种捕集方法的优点和缺点;提出了目前需要进一步研究的若干重要问题,并对其发展前景进行了展望。 相似文献
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Dr. Ulrich Preiss Dr. Vladimir N. Emel'yanenko Prof. Dr. Sergey P. Verevkin Dr. Daniel Himmel Dr. Yauheni U. Paulechka Prof. Dr. Ingo Krossing 《Chemphyschem》2010,11(16):3425-3431
Modeling of the temperature‐dependent liquid entropy of ionic liquids (ILs) with great accuracy using COSMO‐RS is demonstrated. The minimum structures of eight IL ion pairs are investigated and the entropy, calculated from ion pairs, is found to differ on average only 2 % from the available experimental values (119 data points). For calculations with single ions, the average error amounts to 2.6 % and stronger‐coordinating ions tend to give higher deviations. Additionally, the first parameterization of the standard liquid entropy for ILs is presented in the context of traditional volume‐based thermodynamics (Sl0=1.585 kJ mol?1 K?1 nm?3?rm3+14.09 J mol?1 K?1), which sheds light on the statistical treatment of ionic interactions. The findings provide the first direct access to accurate predictions of liquid entropies of ILs, which are tedious and time‐consuming to measure. 相似文献
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David J. Heldebrant Dr. Clement R. Yonker Dr. Philip G. Jessop Dr. Lam Phan 《Chemistry (Weinheim an der Bergstrasse, Germany)》2009,15(31):7619-7627
CO2‐binding organic liquids (CO2BOLs) are mixtures of a base (typically an amidine or guanidine) and an alcohol, and have been shown to reversibly capture and release CO2 with low reaction energies and high gravimetric CO2 capacity. We now report the ability of such liquid blends to chemically bind and release other acid gases such as CS2, COS, and SO2 analogously to CO2. These systems bind with sulfur‐containing acid gases to form colored ionic liquids with new O‐alkylxanthate, O‐alkylthiocarbonyl, and O‐alkylsulfite anions. The capture and thermal stripping of each acid gas from these systems and their applicability towards flue gas desulfurization is discussed. 相似文献
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Jocelyn J. Tindale Kurtis D. Hartlen Abdolhamid Alizadeh Prof. Mark S. Workentin Prof. Paul J. Ragogna Prof. 《Chemistry (Weinheim an der Bergstrasse, Germany)》2010,16(30):9068-9075
The synthesis and characterization of several compounds representing a new class of multitask‐specific phosphonium ionic liquids that contain a maleimide functionality is reported. The maleimide moiety of the ionic liquid (IL) is shown to undergo Michael‐type additions with substrates containing either a thiol or amine moiety, thus, serving as a template to introduce wide structural diversity into the IL. Multitask‐specific ILs are accessible by reaction of the maleimide with Michael donors that are capable of serving some function. As a model example to illustrate this concept, a redox active ferrocenyl thiol was incorporated and examined by cyclic voltammetry. Because the maleimide moiety is highly reactive to additions, the task‐specific ionic liquids (TSILs) are prepared as the furan‐protected Diels–Alder maleimide. The maleimide moiety can then be liberated when required by simple heating. 相似文献
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Ivan Guryanov Dr. Francesca Maria Toma Dr. Alejandro Montellano López Dr. Mauro Carraro Dr. Tatiana Da Ros Dr. Guido Angelini Dr. Eleonora D'Aurizio Dr. Antonella Fontana Prof. Michele Maggini Prof. Maurizio Prato Prof. Marcella Bonchio Dr. 《Chemistry (Weinheim an der Bergstrasse, Germany)》2009,15(46):12837-12845
The effect of microwave (MW) irradiation and ionic liquids (IL) on the cycloaddition of azomethine ylides to [60]fullerene has been investigated by screening the reaction protocol with regard to the IL medium composition, the applied MW power, and the simultaneous cooling of the system. [60]Fullerene conversion up to 98 % is achieved in 2–10 min, by using a 1:3 mixture of the IL 1‐methyl‐3‐n‐octyl imidazolium tetrafluoroborate ([omim]BF4) and o‐dichlorobenzene, and an applied power as low as 12 W. The mono‐ versus poly‐addition selectivity to [60]fullerene can be tuned as a function of fullerene concentration. The reaction scope includes aliphatic, aromatic, and fluorous‐tagged (FT) derivatives. MW irradiation of IL‐structured bucky gels is instrumental for the functionalization of single‐walled carbon nanotubes (SWNTs), yielding group coverages of up to one functional group per 60 carbon atoms of the SWNT network. An improved performance is obtained in low viscosity bucky gels, in the order [bmim]BF4> [omim]BF4> [hvim]TF2N (bmim=1‐methyl‐3‐n‐butyl imidazolium; hvim=1‐vinyl‐3‐n‐hexadecyl imidazolium). With this protocol, the introduction of fluorous‐tagged pyrrolidine moieties onto the SWNT surface (1/108 functional coverage) yields novel FT‐CNS (carbon nanostructures) with high affinity for fluorinated phases. 相似文献